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Simulation Analysis of Suppression of Resonant Overcurrent by Nonlinear Components

机译:非线性元件抑制谐振过电流的仿真分析

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For the development of distributed power supply active distribution network system, the instability of the power supply side causes the system frequency to be disturbed, and harmonics, voltage fluctuations, or ferromagnetic saturation causes resonance and other series of power quality problems; what resulting in the over-voltage and over-current can easily damage components and threaten the system's safe and stable operation. In order to solve these problems, this paper compares some harmonic detection and filtering methods, devices and methods for suppressing resonance in recent years, and combines the principle of resonance to design a nonlinear inductive circuit that can suppress resonant overcurrent according to the characteristics of nonlinear inductors. Compared with the Resistance (R) series Induct Capacitance (LC) parallel circuit composed of common inductors, the circuit described in this paper is not affected by overcurrent, and the influence of overvoltage is relatively greatly reduced. The simulate-on proves that this circuit suppresses the effects of resonant overvoltage and overcurrent.
机译:对于分布式电源有源配电网系统的发展,电源侧的不稳定会引起系统频率的扰动,谐波,电压波动或铁磁饱和会引起谐振等一系列电能质量问题;造成过电压和过电流的原因很容易损坏组件,并威胁系统的安全和稳定运行。为了解决这些问题,本文比较了近年来的一些谐波检测和滤波方法,抑制谐振的装置和方法,并结合谐振原理,设计了一种能够根据非线性特性抑制谐振过电流的非线性电感电路。电感器。与由普通电感器组成的电阻(R)串联电感电容(LC)并联电路相比,本文描述的电路不受过电流影响,并且过电压的影响相对减小。仿真证明该电路抑制了谐振过电压和过电流的影响。

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